A Computational Analysis of Supported and Unsupported Group 6 Transition Metal-Metal Bonds Based on the Natural Orbitals for Chemical Valence (NOCV) and the Extended Transition State (ETS) Techniques

atmire.migration.oldid746
dc.contributor.advisorZiegler, Tom
dc.contributor.authorNdambuki, Sylvester Wambua
dc.date.accessioned2013-02-14T21:53:24Z
dc.date.available2013-06-15T07:01:49Z
dc.date.issued2013-02-14
dc.date.submitted2013en
dc.description.abstractA computational study has been carried out on the nature of the metal-metal bond of group 6 transition metal complexes based on the extended transition state (ETS) and natural orbitals for chemical valence (NOCV) methods. The analysis of the unsupported triple (M2L6) and quadruple (M2L2L´2; M=Cr,Mo,W; L,L´=π-acceptor/σ-donor ligands) metal-metal bonds demonstrated that the M-M bond strength follows the trend Cr<<Mo<W, a trend that is influenced largely by the higher steric repulsion between metal fragments that diminish down the triand with increasing M-M distances. The five bonding components of the putative Cr-Cr quintuple (σ2,π2,π´2,δ2,δ´2) bond in Ar´CrCrAr´ (Ar´=C6H3-2,6(C6H3-2,6-Pri2)2) are also presented in this thesis. It is shown that the presence of isopropyl (Pri) groups stabilizes the system by 20kcal/mol through van der Waal dispersions. Finally, the ETS-NOCV is applied on the analysis of the shortest (1.73Å) fully supported Cr-Cr bond in Cr2(Ar´NC(NMe2)NAr´)2 (Ar´= C6H3-2,6(C6H3-2,6-Pri2)2) and the quadruply (σ2, π4, δ2) bonded paddlewheel complexes.en_US
dc.identifier.citationNdambuki, S. W. (2013). A Computational Analysis of Supported and Unsupported Group 6 Transition Metal-Metal Bonds Based on the Natural Orbitals for Chemical Valence (NOCV) and the Extended Transition State (ETS) Techniques (Master's thesis, University of Calgary, Calgary, Canada). Retrieved from https://prism.ucalgary.ca. doi:10.11575/PRISM/24675en_US
dc.identifier.doihttp://dx.doi.org/10.11575/PRISM/24675
dc.identifier.urihttp://hdl.handle.net/11023/553
dc.language.isoeng
dc.publisher.facultyGraduate Studies
dc.publisher.facultyScience
dc.publisher.institutionUniversity of Calgaryen
dc.publisher.placeCalgaryen
dc.rightsUniversity of Calgary graduate students retain copyright ownership and moral rights for their thesis. You may use this material in any way that is permitted by the Copyright Act or through licensing that has been assigned to the document. For uses that are not allowable under copyright legislation or licensing, you are required to seek permission.
dc.subjectChemistry--Inorganic
dc.subject.classificationComputationalen_US
dc.subject.classificationTheoreticalen_US
dc.subject.classificationETS-NOCVen_US
dc.titleA Computational Analysis of Supported and Unsupported Group 6 Transition Metal-Metal Bonds Based on the Natural Orbitals for Chemical Valence (NOCV) and the Extended Transition State (ETS) Techniques
dc.typemaster thesis
thesis.degree.disciplineChemistry
thesis.degree.grantorUniversity of Calgary
thesis.degree.nameMaster of Science (MSc)
ucalgary.item.requestcopytrue
Files
Original bundle
Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
ucalgary_2013_ndambuki_sylvester.pdf
Size:
9.56 MB
Format:
Adobe Portable Document Format
License bundle
Now showing 1 - 1 of 1
No Thumbnail Available
Name:
license.txt
Size:
2.65 KB
Format:
Item-specific license agreed upon to submission
Description: